036-21342-002 Rev. E (0505)

HEATING PERFORMANCE DATA

E4TS060S06A WITH N1VSD2006 / G2FD061S21 - HIGH CFM 2-CYLINDER OPERATION

 

ID CFM

 

1540

 

1860

 

2075

OD DB

 

ID DB (°F)

MBTUH1,2

 

KW

MBTUH1,2

 

KW

MBTUH1,2

 

KW

 

 

60

65.76

 

4.68

66.22

 

4.71

66.68

 

4.74

60

 

70

63.45

 

4.98

64.33

 

5.02

65.20

 

5.07

 

 

80

61.15

 

5.27

62.43

 

5.33

63.72

 

5.40

 

 

60

56.89

 

4.31

57.80

 

4.39

58.70

 

4.47

47

 

70

54.00

 

4.51

55.00

 

4.61

56.00

 

4.70

 

 

80

51.10

 

4.71

52.20

 

4.82

53.30

 

4.93

 

 

60

46.70

 

3.92

47.54

 

4.04

48.37

 

4.16

35

 

70

43.54

 

4.04

44.43

 

4.17

45.31

 

4.30

 

 

80

40.38

 

4.17

41.32

 

4.30

42.25

 

4.44

 

 

60

29.71

 

3.45

30.61

 

3.58

31.51

 

3.70

17

 

70

28.44

 

3.50

29.20

 

3.68

29.96

 

3.86

 

 

80

27.16

 

3.55

27.79

 

3.79

28.41

 

4.02

 

 

60

21.86

 

2.75

22.24

 

2.81

22.63

 

2.87

7

 

70

20.78

 

2.86

21.19

 

2.94

21.60

 

3.02

 

 

80

19.70

 

2.96

20.14

 

3.06

20.57

 

3.16

 

 

60

13.59

 

2.44

13.84

 

2.50

14.08

 

2.56

-3

 

70

12.92

 

2.53

13.18

 

2.61

13.44

 

2.68

 

 

80

12.25

 

2.62

12.53

 

2.72

12.80

 

2.81

E4TS060S06A WITH N1VSD2006 / G2FD061S21 - LOW CFM 1-CYLINDER OPERATION

 

ID CFM

 

1000

1200

 

 

1350

OD DB

 

ID DB (°F)

MBTUH1,2

 

KW

MBTUH1,2

 

KW

MBTUH1,2

 

KW

 

 

60

36.04

 

2.14

36.57

 

2.14

37.10

 

2.13

60

 

70

33.56

 

2.28

34.11

 

2.28

34.65

 

2.28

 

 

80

31.08

 

2.42

31.64

 

2.42

32.20

 

2.42

 

 

60

26.89

 

2.03

28.43

 

2.03

29.97

 

2.04

47

 

70

25.57

 

2.13

26.60

 

2.14

27.63

 

2.15

 

 

80

24.26

 

2.24

24.77

 

2.25

25.28

 

2.26

 

 

60

17.25

 

1.86

19.73

 

1.88

22.20

 

1.89

35

 

70

17.10

 

1.93

18.56

 

1.95

20.02

 

1.97

 

 

80

16.94

 

2.00

17.39

 

2.02

17.84

 

2.04

For notes see Page 11.

Multipliers for determining the performance with other indoor sections.

2-CYLINDER OPERATION

Air Handler

Coil

HIGH CFM

LOW CFM

 

 

 

 

MBTUH

KW

MBTUH

KW

 

 

 

 

 

 

 

 

N1VSD20

G1FD060S24

0.98

1.00

0.93

0.98

 

 

 

 

 

 

F(2,3)FV060

 

0.98

1.00

0.93

0.98

 

 

 

 

 

 

 

 

 

 

 

 

Variable Speed

Coil

MBTUH

KW

MBTUH

KW

Furnace

 

 

 

 

 

P1XDD20V112

G2FD060S24

0.98

0.99

0.90

0.94

 

 

 

 

 

 

P1XDD20V112

G2FD061H24

1.00

0.99

0.92

0.95

 

 

 

 

 

 

P1XUD20V112

G1UA060S24

0.98

0.98

0.90

0.93

 

 

 

 

 

 

P1XUD20V112

G1FA060S24

0.98

0.98

0.90

0.93

 

 

 

 

 

 

P1XUD20V112

G2FD060S24

0.98

0.98

0.90

0.93

 

 

 

 

 

 

P1XUD20V112

G2FD061H24

1.00

0.98

0.92

0.93

 

 

 

 

 

 

NOTE: KW RATING IS FOR OUTDOOR AND INDOOR UNITS.

1-CYLINDER OPERATION

Air Handler

Coil

LOW CFM

 

 

MBTUH

KW

 

 

 

 

 

 

N1VSD20

G1FD060S24

0.89

0.91

 

 

 

 

F(2,3)FV060

 

0.88

0.90

 

 

 

 

 

 

 

 

Variable Speed

Coil

MBTUH

KW

Furnace

 

 

 

P1XDD20V112

G2FD060S24

0.88

0.95

 

 

 

 

P1XDD20V112

G2FD061H24

0.88

0.92

 

 

 

 

P1XUD20V112

G1UA060S24

0.87

0.95

 

 

 

 

P1XUD20V112

G1FA060S24

0.87

0.95

 

 

 

 

P1XUD20V112

G2FD060S24

0.87

0.95

 

 

 

 

P1XUD20V112

G2FD061H24

0.87

0.93

 

 

 

 

22

Unitary Products Group

Page 22
Image 22
York E4TS030 THRU 060 warranty 36.04 36.57 37.10 33.56

E4TS030 THRU 060 specifications

The York E4TS030 through E4TS060 are a series of air-cooled chillers designed for commercial and industrial applications. These chillers are renowned for their high efficiency, reliability, and advanced technology, making them a popular choice among HVAC professionals and building managers.

One of the main features of the E4TS series is its energy efficiency. With a variable-speed scroll compressor, the E4TS chillers can adjust their capacity according to the cooling demand, which significantly reduces energy consumption. This technology not only contributes to lower operational costs but also aids in minimizing the environmental impact. The units are designed to achieve high energy efficiency ratios (EER) and seasonal energy efficiency ratios (SEER), making them suitable for energy-conscious applications where reducing carbon footprint is a priority.

Another significant characteristic of the E4TS030 to E4TS060 models is their compact design. These chillers are engineered to occupy less space, making them ideal for installations where space is at a premium. The units are constructed with durable materials that withstand various environmental conditions, ensuring longevity and reliability. Additionally, the modular design allows for easy installation and maintenance, providing flexibility for retrofit projects or new constructions.

In terms of control technology, the E4TS series is equipped with advanced microprocessor controls that facilitate precise temperature management and system diagnostics. The intuitive interface allows operators to monitor the system’s performance in real-time, optimizing efficiency and helping to prevent potential issues before they escalate.

Noise reduction is another important feature of the E4TS chillers. These units incorporate sound-dampening technologies and design elements that minimize operational noise, making them suitable for use in noise-sensitive applications, such as schools, hospitals, and office buildings.

Furthermore, the York E4TS series supports various refrigerant options, including environmentally friendly refrigerants, aligning with global initiatives to reduce greenhouse gas emissions. This flexibility enables users to select a refrigerant that meets their specific environmental goals and regulatory requirements.

In summary, the York E4TS030 THRU 060 chillers present a winning combination of energy efficiency, compact design, advanced controls, and low noise operation. Their robust construction and commitment to sustainability make them an excellent choice for a wide range of commercial cooling applications, ensuring optimal performance and reliability over their lifespan.